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Identification of New QTLs for Dietary Fiber Content in Aegilops biuncialis

Grain dietary fiber content is an important health-promoting trait of bread wheat. A dominant dietary fiber component of wheat is the cell wall polysaccharide arabinoxylan and the goatgrass Aegilops biuncialis has high β-glucan content, which makes it an attractive gene source to develop wheat lines...

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Autores principales: Ivanizs, László, Marcotuli, Ilaria, Rakszegi, Marianna, Kalapos, Balázs, Szőke-Pázsi, Kitti, Farkas, András, Türkösi, Edina, Gaál, Eszter, Kruppa, Klaudia, Kovács, Péter, Darkó, Éva, Szakács, Éva, Said, Mahmoud, Cápal, Petr, Doležel, Jaroslav, Gadaleta, Agata, Molnár, István
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8999039/
https://www.ncbi.nlm.nih.gov/pubmed/35409181
http://dx.doi.org/10.3390/ijms23073821
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author Ivanizs, László
Marcotuli, Ilaria
Rakszegi, Marianna
Kalapos, Balázs
Szőke-Pázsi, Kitti
Farkas, András
Türkösi, Edina
Gaál, Eszter
Kruppa, Klaudia
Kovács, Péter
Darkó, Éva
Szakács, Éva
Said, Mahmoud
Cápal, Petr
Doležel, Jaroslav
Gadaleta, Agata
Molnár, István
author_facet Ivanizs, László
Marcotuli, Ilaria
Rakszegi, Marianna
Kalapos, Balázs
Szőke-Pázsi, Kitti
Farkas, András
Türkösi, Edina
Gaál, Eszter
Kruppa, Klaudia
Kovács, Péter
Darkó, Éva
Szakács, Éva
Said, Mahmoud
Cápal, Petr
Doležel, Jaroslav
Gadaleta, Agata
Molnár, István
author_sort Ivanizs, László
collection PubMed
description Grain dietary fiber content is an important health-promoting trait of bread wheat. A dominant dietary fiber component of wheat is the cell wall polysaccharide arabinoxylan and the goatgrass Aegilops biuncialis has high β-glucan content, which makes it an attractive gene source to develop wheat lines with modified fiber composition. In order to support introgression breeding, this work examined genetic variability in grain β-glucan, pentosan, and protein content in a collection of Ae. biuncialis. A large variation in grain protein and edible fiber content was revealed, reflecting the origin of Ae. biuncialis accessions from different eco-geographical habitats. Association analysis using DArTseq-derived SNPs identified 34 QTLs associated with β-glucan, pentosan, water-extractable pentosan, and protein content. Mapping the markers to draft chromosome assemblies of diploid progenitors of Ae. biuncialis underlined the role of genes on chromosomes 1M(b), 4M(b), and 5M(b) in the formation of grain β-glucan content, while other QTLs on chromosome groups 3, 6, and 1 identified genes responsible for total- and water-extractable pentosan content. Functional annotation of the associated marker sequences identified fourteen genes, nine of which were identified in other monocots. The QTLs and genes identified in the present work are attractive targets for chromosome-mediated gene transfer to improve the health-promoting properties of wheat-derived foods.
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spelling pubmed-89990392022-04-12 Identification of New QTLs for Dietary Fiber Content in Aegilops biuncialis Ivanizs, László Marcotuli, Ilaria Rakszegi, Marianna Kalapos, Balázs Szőke-Pázsi, Kitti Farkas, András Türkösi, Edina Gaál, Eszter Kruppa, Klaudia Kovács, Péter Darkó, Éva Szakács, Éva Said, Mahmoud Cápal, Petr Doležel, Jaroslav Gadaleta, Agata Molnár, István Int J Mol Sci Article Grain dietary fiber content is an important health-promoting trait of bread wheat. A dominant dietary fiber component of wheat is the cell wall polysaccharide arabinoxylan and the goatgrass Aegilops biuncialis has high β-glucan content, which makes it an attractive gene source to develop wheat lines with modified fiber composition. In order to support introgression breeding, this work examined genetic variability in grain β-glucan, pentosan, and protein content in a collection of Ae. biuncialis. A large variation in grain protein and edible fiber content was revealed, reflecting the origin of Ae. biuncialis accessions from different eco-geographical habitats. Association analysis using DArTseq-derived SNPs identified 34 QTLs associated with β-glucan, pentosan, water-extractable pentosan, and protein content. Mapping the markers to draft chromosome assemblies of diploid progenitors of Ae. biuncialis underlined the role of genes on chromosomes 1M(b), 4M(b), and 5M(b) in the formation of grain β-glucan content, while other QTLs on chromosome groups 3, 6, and 1 identified genes responsible for total- and water-extractable pentosan content. Functional annotation of the associated marker sequences identified fourteen genes, nine of which were identified in other monocots. The QTLs and genes identified in the present work are attractive targets for chromosome-mediated gene transfer to improve the health-promoting properties of wheat-derived foods. MDPI 2022-03-30 /pmc/articles/PMC8999039/ /pubmed/35409181 http://dx.doi.org/10.3390/ijms23073821 Text en © 2022 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Ivanizs, László
Marcotuli, Ilaria
Rakszegi, Marianna
Kalapos, Balázs
Szőke-Pázsi, Kitti
Farkas, András
Türkösi, Edina
Gaál, Eszter
Kruppa, Klaudia
Kovács, Péter
Darkó, Éva
Szakács, Éva
Said, Mahmoud
Cápal, Petr
Doležel, Jaroslav
Gadaleta, Agata
Molnár, István
Identification of New QTLs for Dietary Fiber Content in Aegilops biuncialis
title Identification of New QTLs for Dietary Fiber Content in Aegilops biuncialis
title_full Identification of New QTLs for Dietary Fiber Content in Aegilops biuncialis
title_fullStr Identification of New QTLs for Dietary Fiber Content in Aegilops biuncialis
title_full_unstemmed Identification of New QTLs for Dietary Fiber Content in Aegilops biuncialis
title_short Identification of New QTLs for Dietary Fiber Content in Aegilops biuncialis
title_sort identification of new qtls for dietary fiber content in aegilops biuncialis
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8999039/
https://www.ncbi.nlm.nih.gov/pubmed/35409181
http://dx.doi.org/10.3390/ijms23073821
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